Spontaneous poloidal spin-up of tokamak plasmas: Reduced equations, physical mechanism, and sonic regimes

A. Hassam, J. Drake
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引用次数: 75

Abstract

A theoretical description of the spontaneous (Stringer) poloidal spin‐up of tokamak plasmas is given. A set of reduced equations is derived to investigate various aspects of the phenomenon. A simple physical description of the instability mechanism is given. The theory of the instability is extended to show that the spin‐up persists even under conditions where the growth rate is sonic. A nonlinear evolution equation for unstable poloidal rotation is obtained which shows that the instability mechanism loses its efficacy when the poloidal speed exceeds the poloidal sound speed, thus resulting in nonlinear saturation of the rotation at this level.
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托卡马克等离子体的自发极向自旋:简化方程、物理机制和声波机制
给出了托卡马克等离子体自发(弦格)极向自旋上升的理论描述。导出了一组简化方程来研究这一现象的各个方面。给出了不稳定机理的简单物理描述。对不稳定性理论进行了扩展,证明了自旋上升即使在声速增长的条件下仍然存在。得到了不稳定极向旋转的非线性演化方程,该方程表明,当极向速度超过极向声速时,不稳定机制失效,导致该水平上的旋转非线性饱和。
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